Files correlati : Ricompilazione Demo : [ ] Commento :Primo commit del modulo git-svn-id: svn://10.65.10.50/trunk@13958 c028cbd2-c16b-5b4b-a496-9718f37d4682
		
			
				
	
	
		
			455 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			455 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
/*---------------------------------------------------------------------------*
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 |              PDFlib - A library for generating PDF on the fly             |
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 +---------------------------------------------------------------------------+
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 | Copyright (c) 1997-2005 Thomas Merz and PDFlib GmbH. All rights reserved. |
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 +---------------------------------------------------------------------------+
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 |                                                                           |
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 |    This software is subject to the PDFlib license. It is NOT in the       |
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 |    public domain. Extended versions and commercial licenses are           |
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 |    available, please check http://www.pdflib.com.                         |
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 |                                                                           |
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 *---------------------------------------------------------------------------*/
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/* $Id: p_gstate.c,v 1.1 2006-05-04 16:36:51 brugno Exp $
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 *
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 * PDFlib routines dealing with the graphics states
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 *
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 */
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#include "p_intern.h"
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/* ---------------------- matrix functions ----------------------------- */
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void
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pdf_concat_raw(PDF *p, pdc_matrix *m)
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{
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    if (pdc_is_identity_matrix(m))
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	return;
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    pdf_end_text(p);
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    pdc_printf(p->out, "%f %f %f %f %f %f cm\n",
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		    m->a, m->b, m->c, m->d, m->e, m->f);
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    pdc_multiply_matrix(m, &p->curr_ppt->gstate[p->curr_ppt->sl].ctm);
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}
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void
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pdf_set_topdownsystem(PDF *p, pdc_scalar height)
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{
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    if (p->ydirection < 0)
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    {
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        pdc_matrix m, sm;
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        pdc_translation_matrix(0, height, &m);
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        pdc_scale_matrix(1, -1, &sm);
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        pdc_multiply_matrix(&sm, &m);
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        pdf_concat_raw(p, &m);
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    }
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}
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/* -------------------- Special graphics state ---------------------------- */
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void
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pdf_init_gstate(PDF *p)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    pdc_identity_matrix(&gs->ctm);
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    gs->x = 0;
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    gs->y = 0;
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    p->curr_ppt->fillrule = pdf_fill_winding;
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    gs->lwidth = 1;
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    gs->lcap = 0;
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    gs->ljoin = 0;
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    gs->miter = 10;
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    gs->flatness = -1;	/* -1 means "has not been set" */
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    gs->dashed = pdc_false;
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}
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void
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pdf__save(PDF *p)
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{
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    pdf_ppt *	ppt = p->curr_ppt;
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    int		sl = ppt->sl;
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    if (sl == PDF_MAX_SAVE_LEVEL - 1)
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	pdc_error(p->pdc, PDF_E_GSTATE_SAVELEVEL,
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	    pdc_errprintf(p->pdc, "%d", PDF_MAX_SAVE_LEVEL - 1), 0, 0, 0);
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    pdf_end_text(p);
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    pdc_puts(p->out, "q\n");
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    /* propagate states to next level */
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    memcpy(&ppt->gstate[sl + 1], &ppt->gstate[sl], sizeof(pdf_gstate));
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    pdf_save_cstate(p);
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    pdf_save_tstate(p);
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    ++ppt->sl;
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}
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void
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pdf__restore(PDF *p)
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{
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    if (p->curr_ppt->sl == 0)
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	pdc_error(p->pdc, PDF_E_GSTATE_RESTORE, 0, 0, 0, 0);
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    pdf_end_text(p);
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    pdc_puts(p->out, "Q\n");
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    p->curr_ppt->sl--;
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    pdf_restore_currto(p);
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}
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void
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pdf__translate(PDF *p, pdc_scalar tx, pdc_scalar ty)
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{
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    pdc_matrix m;
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    pdc_check_number(p->pdc, "tx", tx);
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    pdc_check_number(p->pdc, "ty", ty);
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    if (tx == 0 && ty == 0)
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	return;
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    pdc_translation_matrix(tx, ty, &m);
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    pdf_concat_raw(p, &m);
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}
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void
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pdf__scale(PDF *p, pdc_scalar sx, pdc_scalar sy)
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{
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    pdc_matrix m;
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    pdc_check_number_zero(p->pdc, "sx", sx);
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    pdc_check_number_zero(p->pdc, "sy", sy);
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    if (sx == 1 && sy == 1)
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	return;
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    pdc_scale_matrix(sx, sy, &m);
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    pdf_concat_raw(p, &m);
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}
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void
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pdf__rotate(PDF *p, pdc_scalar phi)
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{
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    pdc_matrix m;
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    pdc_check_number(p->pdc, "phi", phi);
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    if (phi == 0)
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	return;
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    pdc_rotation_matrix(p->ydirection * phi, &m);
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    pdf_concat_raw(p, &m);
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}
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void
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pdf__skew(PDF *p, pdc_scalar alpha, pdc_scalar beta)
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{
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    pdc_matrix m;
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    pdc_check_number(p->pdc, "alpha", alpha);
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    pdc_check_number(p->pdc, "beta", beta);
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    if (alpha == 0 && beta == 0)
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	return;
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    if (alpha > 360 || alpha < -360 ||
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	alpha == -90 || alpha == -270 ||
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	alpha == 90 || alpha == 270)
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    {
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	pdc_error(p->pdc, PDC_E_ILLARG_FLOAT,
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	    "alpha", pdc_errprintf(p->pdc, "%f", alpha), 0, 0);
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    }
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    if (beta > 360 || beta < -360 ||
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	beta == -90 || beta == -270 ||
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	beta == 90 || beta == 270)
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    {
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	pdc_error(p->pdc, PDC_E_ILLARG_FLOAT,
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	    "beta", pdc_errprintf(p->pdc, "%f", beta), 0, 0);
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    }
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    pdc_skew_matrix(p->ydirection * alpha, p->ydirection * beta, &m);
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    pdf_concat_raw(p, &m);
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}
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void
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pdf__concat(PDF *p, pdc_scalar a, pdc_scalar b, pdc_scalar c, pdc_scalar d,
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            pdc_scalar e, pdc_scalar f)
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{
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    pdc_matrix m;
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    pdc_scalar det = a * d - b * c;
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    pdc_check_number(p->pdc, "a", a);
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    pdc_check_number(p->pdc, "b", b);
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    pdc_check_number(p->pdc, "c", c);
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    pdc_check_number(p->pdc, "d", d);
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    pdc_check_number(p->pdc, "e", e);
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    pdc_check_number(p->pdc, "f", f);
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    if (fabs(det) < PDF_SMALLREAL)
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	pdc_error(p->pdc, PDC_E_ILLARG_MATRIX,
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	    pdc_errprintf(p->pdc, "%f %f %f %f %f %f", a, b, c, d, e, f),
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	    0, 0, 0);
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    m.a = a;
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    m.b = b;
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    m.c = c;
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    m.d = d;
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    m.e = e;
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    m.f = f;
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    pdf_concat_raw(p, &m);
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}
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void
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pdf_setmatrix_e(PDF *p, pdc_matrix *n)
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{
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    pdc_matrix m;
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    pdc_scalar det = n->a * n->d - n->b * n->c;
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    if (fabs(det) < PDF_SMALLREAL)
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	pdc_error(p->pdc, PDC_E_ILLARG_MATRIX,
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	    pdc_errprintf(p->pdc, "%f %f %f %f %f %f",
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		n->a, n->b, n->c, n->d, n->e, n->f),
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	    0, 0, 0);
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    pdc_invert_matrix(p->pdc, &m, &p->curr_ppt->gstate[p->curr_ppt->sl].ctm);
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    pdc_multiply_matrix(n, &m);
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    pdf_concat_raw(p, &m);
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}
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void
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pdf__setmatrix(PDF *p, pdc_scalar a, pdc_scalar b, pdc_scalar c, pdc_scalar d,
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    pdc_scalar e, pdc_scalar f)
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{
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    pdc_matrix n;
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    pdc_check_number(p->pdc, "a", a);
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    pdc_check_number(p->pdc, "b", b);
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    pdc_check_number(p->pdc, "c", c);
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    pdc_check_number(p->pdc, "d", d);
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    pdc_check_number(p->pdc, "e", e);
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    pdc_check_number(p->pdc, "f", f);
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    n.a = a;
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    n.b = b;
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    n.c = c;
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    n.d = d;
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    n.e = e;
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    n.f = f;
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    pdf_setmatrix_e(p, &n);
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}
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/* -------------------- General graphics state ---------------------------- */
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#define MAX_DASH_LENGTH	8
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/* definitions of dash options */
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static const pdc_defopt pdf_dashoptions[] =
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{
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    {"dasharray", pdc_scalarlist, 0, 2, MAX_DASH_LENGTH,
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      PDC_FLOAT_PREC, PDC_FLOAT_MAX, NULL},
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    {"dashphase", pdc_scalarlist, 0, 1, 1, 0.0, PDC_FLOAT_MAX, NULL},
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    PDC_OPT_TERMINATE
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};
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static void
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pdf_setdashpattern(PDF *p, pdc_scalar *darray, int length, pdc_scalar phase)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    /* length == 0 or 1 means solid line */
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    if (length < 2)
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    {
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        if (gs->dashed || PDF_FORCE_OUTPUT())
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        {
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            pdc_puts(p->out, "[] 0 d\n");
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            gs->dashed = pdc_false;
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        }
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    }
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    else
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    {
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        int i;
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	pdc_begin_array(p->out);
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        for (i = 0; i < length; i++)
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        {
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            pdc_printf(p->out, "%f ", darray[i]);
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        }
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	pdc_end_array_c(p->out);
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        pdc_printf(p->out, "%f d\n", phase);
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        gs->dashed = pdc_true;
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    }
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}
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void
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pdf__setdash(PDF *p, pdc_scalar b, pdc_scalar w)
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{
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    pdc_scalar darray[2];
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    int length = 2;
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    pdc_check_number_limits(p->pdc, "b", b, 0.0, PDC_FLOAT_MAX);
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    pdc_check_number_limits(p->pdc, "w", w, 0.0, PDC_FLOAT_MAX);
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    /* both zero means solid line */
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    if (b == 0.0 && w == 0.0)
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    {
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        length = 0;
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    }
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    else
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    {
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        darray[0] = b;
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        darray[1] = w;
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    }
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    pdf_setdashpattern(p, darray, length, 0);
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}
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void
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pdf__setdashpattern(PDF *p, const char *optlist)
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{
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    pdc_resopt *results;
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    char **strlist;
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    pdc_scalar *darray = NULL, phase = 0;
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    int length;
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    /* parsing optlist */
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    results = pdc_parse_optionlist(p->pdc, optlist, pdf_dashoptions, NULL,
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                                   pdc_true);
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    length = pdc_get_optvalues("dasharray", results, NULL, &strlist);
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    darray = (pdc_scalar *) strlist;
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    pdc_get_optvalues("dashphase", results, &phase, NULL);
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    pdf_setdashpattern(p, darray, length, phase);
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    pdc_cleanup_optionlist(p->pdc, results);
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}
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void
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pdf__setflat(PDF *p, pdc_scalar flat)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    pdc_check_number_limits(p->pdc, "flat", flat, 0.0, 100.0);
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    if (flat != gs->flatness || PDF_FORCE_OUTPUT())
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    {
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        gs->flatness = flat;
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        pdc_printf(p->out, "%f i\n", flat);
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    }
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}
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void
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pdf__setlinejoin(PDF *p, int join)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    const int LAST_JOIN = 2;
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    if (join < 0 || join > LAST_JOIN)
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	pdc_error(p->pdc, PDC_E_ILLARG_INT,
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	    "join", pdc_errprintf(p->pdc, "%d", join), 0, 0);
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    if (join != gs->ljoin || PDF_FORCE_OUTPUT())
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    {
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        gs->ljoin = join;
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        pdc_printf(p->out, "%d j\n", join);
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    }
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}
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void
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pdf__setlinecap(PDF *p, int cap)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    const int LAST_CAP = 2;
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    if (cap < 0 || cap > LAST_CAP)
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	pdc_error(p->pdc, PDC_E_ILLARG_INT,
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	    "cap", pdc_errprintf(p->pdc, "%d", cap), 0, 0);
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    if (cap != gs->lcap || PDF_FORCE_OUTPUT())
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    {
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        gs->lcap = cap;
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        pdc_printf(p->out, "%d J\n", cap);
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    }
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}
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void
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pdf__setmiterlimit(PDF *p, pdc_scalar miter)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    pdc_check_number_limits(p->pdc, "miter", miter, 1.0, PDC_FLOAT_MAX);
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    if (miter != gs->miter || PDF_FORCE_OUTPUT())
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    {
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        gs->miter = miter;
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        pdc_printf(p->out, "%f M\n", miter);
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    }
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}
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void
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pdf__setlinewidth(PDF *p, pdc_scalar width)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    pdc_check_number_limits(p->pdc, "width", width,
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                            PDC_FLOAT_PREC, PDC_FLOAT_MAX);
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    if (width != gs->lwidth || PDF_FORCE_OUTPUT())
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    {
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        gs->lwidth = width;
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        pdc_printf(p->out, "%f w\n", width);
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    }
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}
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/* reset all gstate parameters except CTM
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*/
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void
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pdf_reset_gstate(PDF *p)
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{
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    pdf_gstate *gs = &p->curr_ppt->gstate[p->curr_ppt->sl];
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    pdf__setcolor(p, "fillstroke", "gray", 0, 0, 0, 0);
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    pdf__setlinewidth(p, 1);
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    pdf__setlinecap(p, 0);
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    pdf__setlinejoin(p, 0);
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    pdf__setmiterlimit(p, 10);
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    pdf__setdash(p, 0, 0);
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    if (gs->flatness != -1)
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	pdf__setflat(p, 1);
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}
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void
 | 
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pdf__initgraphics(PDF *p)
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{
 | 
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    pdc_matrix inv_ctm;
 | 
						|
 | 
						|
    pdf_reset_gstate(p);
 | 
						|
 | 
						|
    pdc_invert_matrix(p->pdc, &inv_ctm,
 | 
						|
	&p->curr_ppt->gstate[p->curr_ppt->sl].ctm);
 | 
						|
    pdf_concat_raw(p, &inv_ctm);
 | 
						|
 | 
						|
    /* This also resets the CTM which guards against rounding artifacts. */
 | 
						|
    pdf_init_gstate(p);
 | 
						|
}
 |